In this work we study the symmetry properties of electrons and phonons in graphene systems as a function of the number of layers. We derive the selection rules for the electron-radiation interactions and for the electron-phonon interactions at all points in the Brillouin zone. By considering these selection rules, we address the double-resonance Raman-scattering process. The monolayer and bilayer graphenes in the presence of an applied electric field are also discussed
This article is a review of our work related to Raman studies of single layer and bilayer graphenes ...
The contributions of the two-dimensional phonon dispersion to the double-resonant Raman scattering p...
Using first-principles techniques, we calculate the renormalization of the electron Fermi velocity a...
In this work we study the symmetry properties of electrons and phonons in graphene systems as a func...
An experimental study of Raman scattering in N-layer graphene as a function of the top layer doping ...
The symmetry group analysis is applied to classify the phonon modes of N-stacked graphene layers (NS...
Desde a identificação de uma ou poucas camadas de grafeno em um substrato em 2004, trabalhos intensi...
The understanding of interactions between electrons and phonons in atomically thin heterostructures ...
The aim of this Master thesis was to perform a theoretical study of the electron-phonon...
Despite the weak interaction between electrons and atomic vibrations (phonons) in the one-atom thick...
In the first part of this dissertation, We study the effects of electron-phonon coupling on the elec...
A brief review is given on recent theoretical study on continuum models of optical phonons as well a...
The interaction of graphene with substrates can alter its electronic and vibrational properties and ...
4 pages, 3 figuresInternational audienceMagneto Raman scattering study of the E$_{2g}$ optical phono...
The experimental Raman spectra of graphene exhibit a few intense two-phonon bands, which a...
This article is a review of our work related to Raman studies of single layer and bilayer graphenes ...
The contributions of the two-dimensional phonon dispersion to the double-resonant Raman scattering p...
Using first-principles techniques, we calculate the renormalization of the electron Fermi velocity a...
In this work we study the symmetry properties of electrons and phonons in graphene systems as a func...
An experimental study of Raman scattering in N-layer graphene as a function of the top layer doping ...
The symmetry group analysis is applied to classify the phonon modes of N-stacked graphene layers (NS...
Desde a identificação de uma ou poucas camadas de grafeno em um substrato em 2004, trabalhos intensi...
The understanding of interactions between electrons and phonons in atomically thin heterostructures ...
The aim of this Master thesis was to perform a theoretical study of the electron-phonon...
Despite the weak interaction between electrons and atomic vibrations (phonons) in the one-atom thick...
In the first part of this dissertation, We study the effects of electron-phonon coupling on the elec...
A brief review is given on recent theoretical study on continuum models of optical phonons as well a...
The interaction of graphene with substrates can alter its electronic and vibrational properties and ...
4 pages, 3 figuresInternational audienceMagneto Raman scattering study of the E$_{2g}$ optical phono...
The experimental Raman spectra of graphene exhibit a few intense two-phonon bands, which a...
This article is a review of our work related to Raman studies of single layer and bilayer graphenes ...
The contributions of the two-dimensional phonon dispersion to the double-resonant Raman scattering p...
Using first-principles techniques, we calculate the renormalization of the electron Fermi velocity a...